Search results for "ACOUSTIC"

showing 10 items of 1590 documents

Characterization of impervious layers using scale models and an inverse method

2009

We describe a novel procedure that uses an inverse method to determine unknown parameters for impervious layers used in multilayer structures. The proposed model of the multilayer structure is limited to an ideal double plate separated by an unbonded, fibrous, sound-absorbing material. Experimental data were obtained by nearfield acoustic holography for the calculation of the transmission loss of various multilayer structures mounted in a window in a wooden box designed specifically for this purpose. We used the Trochidis and Kalaroutis forecast model of acoustic insulation for multilayer structures, which is based on a spatial Fourier transform. The experimental pressure and velocity data …

Inverse methodsEngineeringAcoustics and UltrasonicsAcousticsImpedance couplingHolographyExperimental dataMultilayer structuresAnalysis modelslaw.inventionScale modelssymbols.namesakeOpticsUnknown parameterslawInput dataObservational errorSound absorbing materialsNearfield Acoustic Holographybusiness.industryTransmission lossMechanical EngineeringNumerical analysisSpatial Fourier TransformFORECAST modelAcoustic holographyInverse problemCondensed Matter PhysicsImpervious layersFourier transformMechanics of MaterialsFISICA APLICADAsymbolsbusinessStructural acousticsPosition sensorJournal of Sound and Vibration
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Radiation effects on optical frequency domain reflectometry fiber-based sensor

2015

International audience; We investigate the radiation effects on germanosilicate optical fiber acting as the sensing element of optical frequency domain reflectometry devices. Thanks to a new setup permitting to control temperature during irradiation, we evaluate the changes induced by 10 keV x rays on their Rayleigh response up to 1 MGy in a temperature range from −40°C up to 75°C. Irradiation at fixed temperature points out that its measure is reliable during both irradiation and the recovery process. Mixed temperature and radiation measurements show that changing irradiation temperature leads to an error in distributed measurements that depends on the calibration procedure. These results …

Ionizing radiationMaterials scienceOptical fiberPhysics::Instrumentation and Detectors02 engineering and technologyRayleigh scatteringRadiation01 natural scienceslaw.inventionScattering010309 opticssymbols.namesakeOpticslaw0103 physical sciencesRayleighIrradiationElectroniqueRayleigh scatteringReflectometryRadiationbusiness.industryFiber optics sensorsdistributed fiber optics sensorAtmospheric temperature rangeDistributed acoustic sensing021001 nanoscience & nanotechnologyAtomic and Molecular Physics and Optics[SPI.TRON]Engineering Sciences [physics]/ElectronicsFiber optic sensoroptical frequency domain reflectometrysymbols0210 nano-technologybusinesstemperature sensingOptics Letters
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A comprehensive study on the atom flow in the cross-field discharge of a Hall thruster

2011

The flow properties of Xe atoms were investigated in the 1 kW class PPS100-ML Hall effect thruster by means of Doppler-shifted laser-induced fluorescence spectroscopy in the near infrared. Fluorescence spectra of the resonant level and the metastable level have been acquired inside and outside the thruster channel under several operating conditions. Analytical treatment and modelling of the measured lineshapes indicate the atom axial velocity increases inside the channel to a value well above the sound speed before decreasing quickly in the near-field plume. Numerical simulations performed with a fluid/kinetic hybrid approach allow us to explain the shape of the velocity profile. Atomic flo…

Jet (fluid)Acoustics and Ultrasonicsbusiness.industryChemistryCondensed Matter PhysicsKinetic energyCathodeSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialslaw.inventionIonPlumeOpticslawIonizationMetastabilitySpeed of soundPhysics::Atomic PhysicsAtomic physicsbusinessJournal of Physics D: Applied Physics
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Structural characterization of selective area growth GaN nanowires by non-destructive optical and electrical techniques

2015

The growth selectivity and structural quality of GaN nanowires obtained by plasma-assisted molecular beam epitaxy on pre-patterned GaN(0001) templates are investigated by means of non-destructive techniques. Optimum control over the nanowire arrangement and size requires a pitch between the mask apertures below twice the diffusion length of Ga atoms. Lower pitches, however, seem to slightly diminish the structural quality of the material, as revealed by the increase of the Raman peak linewidths. The photoluminescence spectra of the nanowires show a considerable presence of basal plane stacking faults, whose density increases for decreasing nanowire diameter. The capabilities of Kelvin probe…

Kelvin probe force microscopePhotoluminescenceMaterials scienceAcoustics and Ultrasonicsbusiness.industryNanowireNanotechnologyCondensed Matter PhysicsEpitaxyCrystallographic defectSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialssymbols.namesakeMicroscopysymbolsOptoelectronicsbusinessRaman spectroscopyMolecular beam epitaxyJournal of Physics D: Applied Physics
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Formation Kinetics of Mixed Self-Assembled Monolayers of Alkanethiols on GaAs(100)

2017

International audience; We report on the formation kinetics of mixed self-assembled monolayers (SAMs) comprising 16-mercaptohexadecanoic acid (MHDA) and 11-mercapto-1-undecanol (MUDO) thiols on GaAs(100) substrates. These compounds were selected for their potential in constructing highly selective and efficient architectures for biosensing applications. The molecular composition and quality of one-compound and mixed SAMs were determined by the Fourier transform infrared absorption spectroscopy measurements. The formation of enhanced-quality mixed SAMs was investigated as a function of the molecular composition of the thiol mixture and the proportion of ethanol/water solvent used during thei…

KineticsInfrared spectroscopy02 engineering and technology010402 general chemistry01 natural sciences[SPI.MAT]Engineering Sciences [physics]/Materials[SPI]Engineering Sciences [physics]MonolayerElectrochemistryOrganic chemistryGeneral Materials Science[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicsSpectroscopyComputingMilieux_MISCELLANEOUSSpectroscopy[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph]chemistry.chemical_classificationChemistrySelf-assembled monolayerSurfaces and Interfaces021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesSolventChemical engineeringThiol0210 nano-technologyBiosensorLangmuir
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Laser induced decohesion of coatings: probing by laser ultrasonics.

2002

The aim of the present study is to investigate a conventional laser-ultrasonics technique for the determination of intrinsic properties of oxide coatings and their adhesion strength on a metallic substrate. The good agreement between experiments and computations in an epicenter configuration allows determining the longitudinal wave velocity as well as the Young's modulus of the oxide coatings versus the porosity. For a critical value of the laser energy, a breakdown at the coating-substrate interface is generated by the laser irradiation. The critical tensile stress field developed at the coating/substrate interface, which leads to the interfacial fracture, can be easily calculated. The val…

Laser ultrasonicsMaterials scienceAcoustics and UltrasonicsOxideAdhesionengineering.materialPaint adhesion testingchemistry.chemical_compoundchemistryCoatingIndentationUltimate tensile strengthengineeringThin filmComposite materialUltrasonics
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Evaluation of viscoelastic constants of metallic materials by laser-ultrasonics at elevating temperature

2002

The main objective of this study is the determination of elastic moduli and viscosity coefficients of metals at elevating temperature up to melting point. More specifically, it involves the analysis of the propagation of acoustic waves generated and detected simultaneously by laser-ultrasonic for the measurement of longitudinal and shear velocities. This preliminary work primarily concerns Tin (Sn) metal known for its low melting point and attenuation coefficient.

Laser ultrasonicsMaterials scienceAcoustics and Ultrasonicsbusiness.industryAcoustic waveViscoelasticityShear (sheet metal)ViscosityOpticsAttenuation coefficientMelting pointComposite materialbusinessElastic modulusUltrasonics
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Simultaneous laser generation and laser ultrasonic detection of the mechanical breakdown of a coating–substrate interface

2001

Abstract The present study deals with information that could be obtained by real-time contactless monitoring of the normal displacement, due to the propagation of the longitudinal waves generated by nanosecond pulsed laser irradiation, through a transparent and porous ceramic coating deposited on a metallic substrate. These displacements were recorded in real-time at the rear surface of the specimens using a laser heterodyne interferometer and were correlated with the different steps of laser/material interaction (thermoelastic interactions, fracture of the coating–substrate interface and coating expulsion). An analytical model was developed to establish a relation between the longitudinal …

Laser ultrasonicsMaterials scienceAcoustics and Ultrasonicsbusiness.industryAtmospheric-pressure plasmaSubstrate (electronics)engineering.materialLaserlaw.inventionOpticsThermoelastic dampingCoatinglawvisual_artengineeringvisual_art.visual_art_mediumCeramicComposite materialbusinessLongitudinal waveUltrasonics
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Laser-ultrasonics: a non-contact method to link the acoustic attenuation to metal damping properties up to the melting point

2004

The objective of this work is to describe the viscoelastic behavior of metals up to their melting temperature by measuring the velocity and the attenuation of ultrasonics waves. For that purpose, a technique called laser-ultrasonics has been optimized for the high temperature domain and the solid to liquid transition. This paper is especially applied to the viscoelastic characterization of tin, from room temperature up to the melting point.

Laser ultrasonicsWork (thermodynamics)Materials scienceMechanical EngineeringAttenuationchemistry.chemical_elementMineralogyCondensed Matter PhysicsViscoelasticityCharacterization (materials science)Condensed Matter::Soft Condensed MatterchemistryMechanics of MaterialsMelting pointGeneral Materials ScienceComposite materialTinAcoustic attenuationMaterials Science and Engineering: A
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Air gap fringing flux reduction in a high frequency inductor for a solar inverter

2013

In a gapped inductor, air gap fringing flux induces eddy currents in conductors in the vicinity of the air gap producing unwanted power loss and heat in the coil. This paper presents a detailed analysis to evaluate the performance changes of a high frequency inductor used in a solar inverter by new arrangement scheme of the air gap locations. The effect of air gap positioning in the core and the ac-resistance and leakage inductance of the high frequency inductor used in a solar inverter is investigated by using the 2-D finite element analysis. The simulation results show that a significant improvement can be achieved with limited changes in the air gap locations.

Leakage inductanceMaterials sciencebusiness.industryAcousticsElectrical engineeringSolar inverterInductorFinite element methodlaw.inventionlawElectromagnetic coilEddy currentAir gap (plumbing)businessElectrical conductor2013 IEEE 39th Photovoltaic Specialists Conference (PVSC)
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